Sustainable harvesting policies for a fishery model including spawning periods and taxation
We consider a fishery model containing predator fish and prey fish in which the predators are the commercial fish. We also divide each year into a spawning period and a harvesting period. The modified Lotka-Volterra interspecific competition model is applied to the fisheries system in spawning perio...
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th-mahidol.144042018-06-11T11:57:54Z Sustainable harvesting policies for a fishery model including spawning periods and taxation Tawatchai Petaratip Kornkanok Bunwong Elvin J. Moore Rawee Suwandechochai Maejo University Mahidol University South Carolina Commission on Higher Education King Mongkut's University of Technology North Bangkok Mathematics We consider a fishery model containing predator fish and prey fish in which the predators are the commercial fish. We also divide each year into a spawning period and a harvesting period. The modified Lotka-Volterra interspecific competition model is applied to the fisheries system in spawning periods while an additional variable, harvesting effort of fishermen, is introduced to the system during the harvesting period. The existence of steady state solutions and closed orbits are theoretically studied and the local and global stabilities of steady state solutions are also studied. The fisheries population dynamics, total revenue earned by government and fishermen are investigated numerically for a range of taxation levels and a range of limits imposed on maximum fishing effort. 2018-06-11T04:57:54Z 2018-06-11T04:57:54Z 2012-02-27 Article International Journal of Mathematical Models and Methods in Applied Sciences. Vol.6, No.2 (2012), 411-418 19980140 2-s2.0-84857257397 https://repository.li.mahidol.ac.th/handle/123456789/14404 Mahidol University SCOPUS https://www.scopus.com/inward/record.uri?partnerID=HzOxMe3b&scp=84857257397&origin=inward |
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Mathematics Tawatchai Petaratip Kornkanok Bunwong Elvin J. Moore Rawee Suwandechochai Sustainable harvesting policies for a fishery model including spawning periods and taxation |
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We consider a fishery model containing predator fish and prey fish in which the predators are the commercial fish. We also divide each year into a spawning period and a harvesting period. The modified Lotka-Volterra interspecific competition model is applied to the fisheries system in spawning periods while an additional variable, harvesting effort of fishermen, is introduced to the system during the harvesting period. The existence of steady state solutions and closed orbits are theoretically studied and the local and global stabilities of steady state solutions are also studied. The fisheries population dynamics, total revenue earned by government and fishermen are investigated numerically for a range of taxation levels and a range of limits imposed on maximum fishing effort. |
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Maejo University |
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Maejo University Tawatchai Petaratip Kornkanok Bunwong Elvin J. Moore Rawee Suwandechochai |
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Article |
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Tawatchai Petaratip Kornkanok Bunwong Elvin J. Moore Rawee Suwandechochai |
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Tawatchai Petaratip |
title |
Sustainable harvesting policies for a fishery model including spawning periods and taxation |
title_short |
Sustainable harvesting policies for a fishery model including spawning periods and taxation |
title_full |
Sustainable harvesting policies for a fishery model including spawning periods and taxation |
title_fullStr |
Sustainable harvesting policies for a fishery model including spawning periods and taxation |
title_full_unstemmed |
Sustainable harvesting policies for a fishery model including spawning periods and taxation |
title_sort |
sustainable harvesting policies for a fishery model including spawning periods and taxation |
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2018 |
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https://repository.li.mahidol.ac.th/handle/123456789/14404 |
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1763490362607796224 |